Recent findings have shown that it is possible to use the Layer-by-Layer technique to create nanofibrillated cellulose / polyethyleneimine interference films whose colour change with relative humidity. This study uses different optical models to describe spectral ellipsometry measurements data of interference films and how the film properties alter in dry and humid environments. The results indicate that water condensation initially is filling the surface pores within seconds whereas relaxation of the film to adjust to the added water is a slower process that reaches a steady state after ≈20 min. The maximum swelling ratio of the LbL films is almost independent of the number of layers within the film, but decreases considerably by crosslink...
The response time of state of the art humidity sensors is approximately 8 s. A faster tracking of hu...
Foams made from cellulose nanomaterials are highly porous and possess excellent mechanical and therm...
This work represents an effort to exploit the inherent features of nanoscaled cellulose as practical...
Recent findings have shown that it is possible to use the Layer-by-Layer technique to create nanofib...
Cellulose-water interactions are crucial to understand biological processes as well as to develop ta...
Nanoscaled cellulosic materials have an inherent tendency to form films upon drying. These films hav...
Humidity is an efficient instrument for facilitating changes in local architectures of two-dimension...
The spreading and stabilization of free and lipid monolayer covered films of aqueous solutions (of N...
It has been extensively reported that cellulose nanocrystals (CNCs) can represent structural colors ...
International audienceUltrathin multilayer films, assembled by the layer-by-layer (LbL) technique, a...
In this paper, porous nanofibrillated cellulose (NFC) films were utilized to produce water-resistant...
Water interactions of ultra-thin films of wood-derived polysaccharides were investigated by using su...
Cellulose nanoparticles exhibit distinct water uptake behaviour in response to changing humidity con...
Amorphous cellulose films were created by regeneration from 1-Ethyl-3-methylimidazolium acetate (Emi...
| openaire: EC/H2020/760876/EU//INNPAPER | openaire: EC/H2020/788489/EU//BioELCellTEMPO-oxidized cel...
The response time of state of the art humidity sensors is approximately 8 s. A faster tracking of hu...
Foams made from cellulose nanomaterials are highly porous and possess excellent mechanical and therm...
This work represents an effort to exploit the inherent features of nanoscaled cellulose as practical...
Recent findings have shown that it is possible to use the Layer-by-Layer technique to create nanofib...
Cellulose-water interactions are crucial to understand biological processes as well as to develop ta...
Nanoscaled cellulosic materials have an inherent tendency to form films upon drying. These films hav...
Humidity is an efficient instrument for facilitating changes in local architectures of two-dimension...
The spreading and stabilization of free and lipid monolayer covered films of aqueous solutions (of N...
It has been extensively reported that cellulose nanocrystals (CNCs) can represent structural colors ...
International audienceUltrathin multilayer films, assembled by the layer-by-layer (LbL) technique, a...
In this paper, porous nanofibrillated cellulose (NFC) films were utilized to produce water-resistant...
Water interactions of ultra-thin films of wood-derived polysaccharides were investigated by using su...
Cellulose nanoparticles exhibit distinct water uptake behaviour in response to changing humidity con...
Amorphous cellulose films were created by regeneration from 1-Ethyl-3-methylimidazolium acetate (Emi...
| openaire: EC/H2020/760876/EU//INNPAPER | openaire: EC/H2020/788489/EU//BioELCellTEMPO-oxidized cel...
The response time of state of the art humidity sensors is approximately 8 s. A faster tracking of hu...
Foams made from cellulose nanomaterials are highly porous and possess excellent mechanical and therm...
This work represents an effort to exploit the inherent features of nanoscaled cellulose as practical...